4.5 Article

Phytoplankton diversity and community responses to physicochemical variables in mangrove zones of Guangzhou Province, China

Journal

ECOTOXICOLOGY
Volume 29, Issue 6, Pages 650-668

Publisher

SPRINGER
DOI: 10.1007/s10646-020-02209-0

Keywords

The South China coast; Mangrove plants; Organic pollution; Shannon diversity index; Species richness index; Water temperature

Funding

  1. National Key Research and Development Plan [2017FY100700]
  2. National Natural Science Foundation of China [U1901211, 41430966, 41876126]
  3. International Partnership Program of Chinese Academy of Sciences [133244KYSB20180012]
  4. Strategic Priority Research Program of the Chinese Academy of Sciences [XDA23050200, XDA13010500, XDA13020503]

Ask authors/readers for more resources

The phytoplankton diversity and community response to physicochemical variables in mangrove zones of Guangdong Province along the South China coast was investigated from October to December, 2017. This study was set to investigate the phytoplankton community structure in the mangrove zone and assess the relationship between the physicochemical variables and phytoplankton species diversity. Physicochemical variables such as water temperature, total dissolve solids (tds), pH, salinity, turbidity, electrical conductivity (EC) and nutrient salts were measured in situ across the 27 stations. A total of 451 species of phytoplankton were identified belonging to 10 groups (Bacillariophta > Cyanophyta > Chlorophyta > Euglenophyta > Dinoflagellate > Eubacteria > Ochrophyta > Crytophyta > Rhodophyta > Charophyta) and quantified to constitute a standing crop of 7.11 x 10(8) cells dm(-3). The principal component analysis (PCA) reveals that reactive nitrate, phosphate, electrical conductive (EC) and turbidity were the best abiotic factors that controlled the phytoplankton community structure in the area. However, Cannon Corresponding Analysis and Pearson correlation have explicitly revealed the impact of reactive nitrate, phosphate, EC and turbidity on the phytoplankton community structure. For instance, the CCA ordination revealed that species richness and evenness were positively influenced by reactive nitrate but negatively affected by EC, turbidity and water temperature. Diatoms were mostly controlled by total dissolved solids (tds) and salinity, whereas Euglena, cyanobacteria and green algae were impacted EC and turbidity, apart from the general contribution of the nutrient salts as delineated by CCA ordination. The Shannon diversity index value exposed different levels of organic pollution across the mangrove zone of which GD37 was the most impacted station.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.5
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available